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A System for Three-Dimensional Shape Measurement and its Application in Microtia Ear Reconstruction

机译:三维形状测量系统及其在小耳畸形重建中的应用

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Microtia is one form of ear anomalies representing the defect of a partial or total loss of external ear. This paper describes new method of total auricular reconstruction which combines the use of tissue expander and the non-contact, 3-dimensional (3-D) shape measurement system. The anterolateral and posterior surface of the both sides of the ear of the patients were measured with the 3-D shape measure ment system. The data from normal side was mirror-imaged electronicJliy and transferred to the computer-controlled milling machine to create the life-sized, mirror-image wax model. These models were sterialized and used as a template or an aid during assembling procedure of the autologous cartilage frame work in order to reproduce the 3-D configuration of the wax model. Seven cases were treated with this method and 5 cases (72%) were graded as excellent (superior to that result obtainable from conventional methodology), one each (14%) was good (better result) and fair (the same level). There are no poor evaluations. In two cases, the exposure of the expander, one of the major complications, developed. Although additional surgery was needed, excellent and fair result was obtained in these cases. It was concluded that the method presented here was evaluated as an overall good method and its application should be further extended.
机译:小耳畸形是耳朵异常的一种形式,代表外耳部分或全部丧失的缺陷。本文介绍了一种新的全耳重建方法,该方法结合了组织扩张器和非接触式3维(3-D)形状测量系统的使用。用3-D形状测量系统测量患者耳朵两侧的前外侧和后表面。来自正常面的数据通过镜像电子方式传输到计算机控制的铣床,以创建与实际大小一样的镜像蜡模型。对这些模型进行了灭菌处理,并在自体软骨框架的组装过程中用作模板或辅助工具,以重现蜡模型的3-D结构。用这种方法治疗了7例病例,其中5例(72%)被评为优(优于传统方法得出的结果),每例(14%)为好(结果更好)和一般(相同水平)。没有差的评价。在两种情况下,发生了扩张器的暴露,这是主要的并发症之一。尽管需要额外的手术,但在这些情况下仍获得了出色而公正的结果。结论是,此处介绍的方法被认为是一种总体良好的方法,应进一步扩展其应用范围。

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